Publication | Closed Access
Submicron YBaCuO biepitaxial Josephson junctions: d-wave effects and phase dynamics
32
Citations
28
References
2010
Year
Superconducting MaterialJosephson JunctionsElectrical EngineeringEngineeringHigh-tc SuperconductivityPhysicsHigh-temperature SuperconductivityNanoelectronicsApplied PhysicsCondensed Matter PhysicsSuperconductivityPhase DynamicsJunction PropertiesHts DevicesHigh Tc SuperconductorsSuperconducting DevicesBiepitaxial Josephson Junctions
We report a systematic study of the transport properties of high critical temperature superconductor (HTS) biepitaxial Josephson junctions in the submicron range. Junction performances point to more uniform and reproducible devices and to better control of d-wave intrinsic properties. Outcomes promote novel insights into the transport mechanisms across grain boundaries and encourage further developments in the control of dissipation in HTS devices. The application of nanotechnology to HTS could be an additional tool to properly engineer the junction properties to match specific circuit design also in view of the integration into hybrid quantum circuits.
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